Pharmaceutical Development and Technology 2000-01-01

Granulation of acetaminophen by a rotating fluidized-bed granulator.

T Kawaguchi, H Sunada, Y Yonezawa, K Danjo, M Hasegawa, T Makino, H Sakamoto, K Fujita, T Tanino, H Kokubo

Index: Pharm. Dev. Technol. 5(2) , 141-51, (2000)

Full Text: HTML

Abstract

The purpose of this research was to evaluate the use of a rotating fluidized-bed granulator to produce acetaminophen granules with sufficient binding force between particles and good plasticity in tablets. Ethenzamide and ascorbic acid were used to compare the relationship between granulation and the sample wetness. It was revealed that a blade rotation rate of 300 rpm, inlet air flow rate of 42 m3/hr, and spraying pressure of 1.5 kg/cm3 produced tablets with the best properties. The granule and tablet properties of ethenzamide and ascorbic acid were compared to those of acetaminophen. These compounds showed different wetting behaviors with water and different compression behaviors. With an increase in medicament content, tablet hardness increased except for the ascorbic acid formulation. Capping and sticking were observed in acetaminophen and in ascorbic acid, respectively, and acetaminophen and ethenzamide showed prolonged disintegration time.


Related Compounds

  • 2-Ethoxybenzamide

Related Articles:

Simultaneous determination of polar pharmaceuticals and personal care products in biological organs and tissues.

2014-08-15

[J. Chromatogr. A. 1355 , 193-205, (2014)]

Assessment of groundwater pollution in Tokyo using PPCPs as sewage markers.

2012-02-07

[Environ. Sci. Technol. 46(3) , 1455-64, (2012)]

Modifying effects of a mixture of acetaminophen, aspirin, dipyrone and ethenzamide on a multiorgan initiation model and its carcinogenicity in male F344 rats.

1999-01-08

[Cancer Lett. 135(1) , 83-90, (1999)]

Study of standard tablet formulation based on fluidized-bed granulation.

1998-03-01

[Drug Dev. Ind. Pharm. 24(3) , 225-33, (1998)]

Herringbone array of hydrogen-bonded ribbons in 2-ethoxybenzamide from high-resolution X-ray powder diffraction.

2009-11-01

[Acta Crystallogr. C 65(Pt 11) , o583-6, (2009)]

More Articles...